Patents by Inventor Klaus Bussinger

Klaus Bussinger has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20230228603
    Abstract: A clamp-on ultrasonic flowmeter includes pairs of ultrasonic transducers arranged on an exterior of a pipeline, and an electronic measuring/operating circuit for operating the transducers and for registering and evaluating measurement signals and for providing measured values of volume flow or flow velocity. The pairs are implemented as 1-traverse or 2-traverse pairs. One-traverse pairs are arranged on opposite sides of the pipeline, and 2-traverse pairs are arranged on a same side of the pipeline. At least three pairs are arranged on the pipeline and are distributed peripherally. Adjoining pairs of a number of pairs have an inner angle down to a minimum inner angle (MIA) between one another measured about a pipeline axis, which minimum inner angle obeys the following relationship: MIA=360°/(T*N*F(T,N)) with T as number of traverses and F(T,N)=0.38+0.62*T+(0.048?0.01*T{circumflex over (?)}2)*(N?2){circumflex over (?)}2.
    Type: Application
    Filed: June 16, 2021
    Publication date: July 20, 2023
    Inventors: Oliver Berberig, Thomas Fröhlich, Beat Kissling, Quirin Müller, Klaus Bussinger
  • Patent number: 9970808
    Abstract: A method for ascertaining a compensated flow and/or a compensated flow velocity, wherein the compensation of a flow related measurement error occurs in the context of a flow measurement with a two path measuring of an ultrasonic, flow measuring device, comprising: an arrangement of at least two ultrasonic transducers pairs on a tube, or pipe, wherein the ultrasonic transducers are in a 180°, two path, one traverse, or a 90°, two path, two traverse arrangement, by means of an evaluation unit of a flow measuring device and/or a computer, characterized by steps as follows: a) feeding information relative to the type of a flow influencing, tube, or pipe, element into the evaluation unit and/or into the computer; b) feeding information relative to distance (xa-xd) of the arrangement of the ultrasonic transducer pairs from the flow influencing, tube, or pipe, element into the evaluation unit and/or into the computer; c) compensating a measurement error by means of a correction factor kD as a function of information
    Type: Grant
    Filed: May 19, 2014
    Date of Patent: May 15, 2018
    Assignee: Endress + Hauser Flowtec AG
    Inventors: Thomas Frohlich, Oliver Berberig, Beat Kissling, Quirin Muller, Klaus Bussinger
  • Publication number: 20160131516
    Abstract: A method for ascertaining a compensated flow and/or a compensated flow velocity, wherein the compensation of a flow related measurement error occurs in the context of a flow measurement with a two path measuring of an ultrasonic, flow measuring device, comprising: an arrangement of at least two ultrasonic transducers pairs on a tube, or pipe, wherein the ultrasonic transducers are in a 180°, two path, one traverse, or a 90°, two path, two traverse arrangement, by means of an evaluation unit of a flow measuring device and/or a computer, characterized by steps as follows: a) feeding information relative to the type of a flow influencing, tube, or pipe, element into the evaluation unit and/or into the computer; b) feeding information relative to distance (xa-xd) of the arrangement of the ultrasonic transducer pairs from the flow influencing, tube, or pipe, element into the evaluation unit and/or into the computer; c) compensating a measurement error by means of a correction factor kD as a function of information
    Type: Application
    Filed: May 19, 2014
    Publication date: May 12, 2016
    Inventors: Thomas Frohlich, Oliver Berberig, Beat Kissling, Quirin Muller, Klaus Bussinger
  • Patent number: 7886615
    Abstract: A method for system- and/or process-monitoring in the case of an ultrasound flow measuring device having a plurality of measuring channels, wherein a medium flows though a pipeline or measuring tube in the direction of a longitudinal axis of the pipeline or measuring tube. Ultrasonic measuring signals are coupled into the pipeline or measuring tube and coupled out of the pipeline or measuring tube in such a way that they travel through the medium along different sound paths. Following passage through the pipeline or measuring tube, the ultrasonic measuring signals are detected in the individual measuring channels, wherein at least one actual quantity describing the ultrasonic measuring signal of each measuring channel is ascertained. The actual quantity is compared with a desired quantity captured under predetermined system- or process-conditions, and a report is output in the case of a difference between the ascertained, actual quantity and the captured, desired quantity.
    Type: Grant
    Filed: September 7, 2006
    Date of Patent: February 15, 2011
    Assignee: Endress + Hauser Flowtec AG
    Inventors: Thomas Froehlich, Andreas Berger, Klaus Bussinger
  • Publication number: 20100139415
    Abstract: A method for system- and/or process-monitoring in the case of an ultrasound flow measuring device having a plurality of measuring channels, wherein a medium flows though a pipeline or measuring tube in the direction of a longitudinal axis of the pipeline or measuring tube. Ultrasonic measuring signals are coupled into the pipeline or measuring tube and coupled out of the pipeline or measuring tube in such a way that they travel through the medium along different sound paths. Following passage through the pipeline or measuring tube, the ultrasonic measuring signals are detected in the individual measuring channels, wherein at least one actual quantity describing the ultrasonic measuring signal of each measuring channel is ascertained. The actual quantity is compared with a desired quantity captured under predetermined system- or process-conditions, and a report is output in the case of a difference between the ascertained, actual quantity and the captured, desired quantity.
    Type: Application
    Filed: September 7, 2006
    Publication date: June 10, 2010
    Applicant: Endress + Hauser Flowtec AG
    Inventors: Andreas Berger, Klaus Bussinger, Thomas Frohlich
  • Patent number: 7706986
    Abstract: An ultrasonic flow measuring device, which determines volume and/or mass flow of a medium in a pipeline, or in a measuring tube. The flow measuring device includes a plurality of ultrasonic sensors, which emit and/or receive ultrasonic measurement signals along defined sound paths. The control/evaluation electronics of the flow measuring device is divided into an on-site electronics, in which at least one switch is provided, via which the ultrasonic sensors, arranged in different sound paths, can be driven and/or queried, and at least one remote, control/evaluation unit, wherein the control/evaluation unit so switches the at least one switch, that the driven and/or queried, ultrasonic sensor, or the driven and/or queried pair of ultrasonic sensors, is activated and provides measured values.
    Type: Grant
    Filed: April 27, 2006
    Date of Patent: April 27, 2010
    Assignee: Endress + Hauser Flowtec AG
    Inventors: Thomas Fröhlich, Achim Wiest, Andreas Berger, Harald Stocker, Torsten Strunz, Aurele Fleury, Oliver Berberig, Klaus Bussinger, Patrick Oudoire, Saul Jacobson, Frank Wandeler, Oliver Brumberg
  • Patent number: 7620505
    Abstract: An ultrasonic flow measuring device which provides a flow measuring device characterized by a low electrical current consumption and low power uptake. At least one component of high power uptake with a control/evaluation unit is provided, with the control/evaluation unit being designed such that the component of high power uptake is operated intermittently in a measuring phase and in an idle phase, with the component being activated in the measuring phase, while, in the idle phase, the component exhibits a reduced power uptake or is completely turned off.
    Type: Grant
    Filed: November 17, 2003
    Date of Patent: November 17, 2009
    Assignee: Endress + Hauser Flowtec AG
    Inventors: Thomas Froehlich, Harald Stocker, Klaus Bussinger
  • Patent number: 7552652
    Abstract: A device for determining and/or monitoring the volume, and/or mass, flow of a medium flowing through a containment in a stream direction. The device includes: At least one ultrasonic transducer, which emits and/or receives ultrasonic measuring signals; and a control/evaluation unit, which determines the volume, and/or mass, flow of the medium in the containment on the basis of the ultrasonic measuring signals according to the travel time difference principle or the Doppler principle. A first clock-pulse generator having a first pulse rate and a second clock-pulse generator having a second pulse rate are provided, with the first pulse rate of the first clock-pulse generator being greater than the second pulse rate of the second clock-pulse generator. The control/evaluation unit operates the first clock-pulse generator intermittently. The control/evaluation unit sizes the duration of a switch-on, or measuring, phase and/or a resting phase as a function of the available energy.
    Type: Grant
    Filed: May 4, 2005
    Date of Patent: June 30, 2009
    Assignee: Endress + Hauser Flowtec AG
    Inventors: Thomas Fröhlich, Klaus Bussinger, Jacobson Saul
  • Publication number: 20080148866
    Abstract: A device for determining and/or monitoring the volume, and/or mass, flow of a medium flowing through a containment in a stream direction. The device includes: At least one ultrasonic transducer, which emits and/or receives ultrasonic measuring signals; and a control/evaluation unit, which determines the volume, and/or mass, flow of the medium in the containment on the basis of the ultrasonic measuring signals according to the travel time difference principle or the Doppler principle. A first clock-pulse generator having a first pulse rate and a second clock-pulse generator having a second pulse rate are provided, with the first pulse rate of the first clock-pulse generator being greater than the second pulse rate of the second clock-pulse generator. The control/evaluation unit operates the first clock-pulse generator intermittently. The control/evaluation unit sizes the duration of a switch-on, or measuring, phase and/or a resting phase as a function of the available energy.
    Type: Application
    Filed: May 4, 2005
    Publication date: June 26, 2008
    Applicant: Endress + Hauser Flowtec AG
    Inventors: Thomas Frohlich, Klaus Bussinger, Jacobson Saul
  • Patent number: 7240566
    Abstract: An apparatus for the positioning of a clamp-on flow measuring device on a containment, which has a medium flowing through it. The apparatus includes at least two ultrasonic transducers, which emit measuring signals into the containment and/or receive measuring signals from the containment, a positioning unit for the variable positioning of the ultrasonic transducers on the containment, a control/evaluation unit, which calculates from predetermined process and/or system variables a characteristic, desired variable of the measuring signals and which determines on the basis of a comparison of the calculated, desired variable with the corresponding, measured, actual variable, whether the ultrasonic transducers are optimally positioned or whether the position of the ultrasonic transducers need to be changed, and an indicating unit, which indicates to operating personnel a required change of position and/or the direction in which a change of position needs to be made.
    Type: Grant
    Filed: December 6, 2003
    Date of Patent: July 10, 2007
    Assignee: Endress + Hauser Flowtec AG
    Inventors: Thomas Froehlich, Achim Wiest, Andreas Berger, Harald Stocker, Torsten Strunz, Auréle Fleury, Klaus Bussinger, Oliver Brumberg
  • Publication number: 20060278016
    Abstract: An ultrasonic flow measuring device, which determines volume and/or mass flow of a medium in a pipeline, or in a measuring tube. The flow measuring device includes a plurality of ultrasonic sensors, which emit and/or receive ultrasonic measurement signals along defined sound paths. The control/evaluation electronics of the flow measuring device is divided into an on-site electronics, in which at least one switch is provided, via which the ultrasonic sensors, arranged in different sound paths, can be driven and/or queried, and at least one remote, control/evaluation unit, wherein the control/evaluation unit so switches the at least one switch, that the driven and/or queried, ultrasonic sensor, or the driven and/or queried pair of ultrasonic sensors, is activated and provides measured values.
    Type: Application
    Filed: April 27, 2006
    Publication date: December 14, 2006
    Applicant: Endress + Hauser Flowtec AG
    Inventors: Thomas Froehlich, Achim Wiest, Andreas Berger, Harald Stocker, Torsten Strunz, Aurele Fleury, Klaus Bussinger, Patrick Oudoire, Saul Jacobson, Oliver Berberig, Frank Wandeler, Oliver Brumberg
  • Publication number: 20060243063
    Abstract: An ultrasonic flow measuring device which provides a flow measuring device characterized by a low electrical current consumption and low power uptake. At least one component of high power uptake with a control/evaluation unit is provided, with the control/evaluation unit being designed such that the component of high power uptake is operated intermittently in a measuring phase and in an idle phase, with the component being activated in the measuring phase, while, in the idle phase, the component exhibits a reduced power uptake or is completely turned off.
    Type: Application
    Filed: November 17, 2003
    Publication date: November 2, 2006
    Applicant: Endress + Hauser Flowtec AG
    Inventor: Klaus Bussinger
  • Publication number: 20060123922
    Abstract: An apparatus for the positioning of a clamp-on flow measuring device on a containment, which has a medium flowing through it. The apparatus includes at least two ultrasonic transducers, which emit measuring signals into the containment and/or receive measuring signals from the containment, a positioning unit for the variable positioning of the ultrasonic transducers on the containment, a control/evaluation unit, which calculates from predetermined process and/or system variables a characteristic, desired variable of the measuring signals and which determines on the basis of a comparison of the calculated, desired variable with the corresponding, measured, actual variable, whether the ultrasonic transducers are optimally positioned or whether the position of the ultrasonic transducers need to be changed, and an indicating unit, which indicates to operating personnel a required change of position and/or the direction in which a change of position needs to be made.
    Type: Application
    Filed: December 6, 2003
    Publication date: June 15, 2006
    Applicant: Endress + Hauser Flowtec AG
    Inventors: Thomas Froehlich, Achim Wiest, Andreas Berger, Harald Stocker, Torsten Strunz, Aurele Fleury, Klaus Bussinger, Oliver Brumberg